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Bandwidth improvement of inlined coupled rectangular waveguide band pass iris filter for space borne missions

机译:用于太空任务的直插耦合矩形波导带通虹膜滤波器的带宽改进

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Over the past decades, filter technology has evolved due to advancement in RF technologies demanded by defense and scientific research systems i.e. Ground based radars, Air borne and Space borne applications. Microwave waveguide filters are one of the critical components in full duplex RF satellite systems that have acquired much importance among satellite communication filters. For air borne and space borne applications, it is used as a receiver protector technology at the output of Jammers in Radars, at the front end of sensitive channelized receiver. Using resonator technology, Iris filter provides narrow pass bands with outstanding selectivity and high stop band rejection. Therefore, Equiripple waveguide filters have become essential option to remove inter-symbol noise and to shape spectrum in space borne communication. In this paper, procedures for synthesis, optimization techniques to improve bandwidth of 5th order Chebyshev band pass iris filter are proposed. Filter is designed to resonate in a frequency range of 8.2 to 8.35 GHz. This single mode cavity filter is a part of pre-selector required to limit bandwidth for transmitter/receiver in a communication satellite/Radars. Coupling matrix technique along with half wave topology is implemented to carry out results. Design is optimized using HFSS (Eigen and Driven modal) to achieve desired coupling bandwidths good reflection coefficient and narrow bandwidth.
机译:在过去的几十年中,由于国防和科研系统,即地面雷达,机载和太空应用的射频技术的发展,滤波器技术得到了发展。微波波导滤波器是全双工RF卫星系统中的关键组件之一,在卫星通信滤波器中已变得非常重要。对于机载和太空应用,它在灵敏通道接收器的前端,用作雷达干扰器输出的接收器保护器技术。使用谐振器技术,虹膜滤波器可提供窄通带,出色的选择性和高阻带抑制性能。因此,Equiripple波导滤波器已成为消除码间噪声和调整星载通信频谱的必不可少的选择。本文提出了合成程序,优化技术以提高五阶切比雪夫带通虹膜滤波器的带宽。滤波器设计为在8.2至8.35 GHz的频率范围内谐振。该单模腔滤波器是预选器的一部分,该预选器需要限制通信卫星/雷达中发射机/接收机的带宽。实现了耦合矩阵技术和半波拓扑结构来执行结果。使用HFSS(本征和驱动模态)对设计进行了优化,以实现所需的耦合带宽,良好的反射系数和较窄的带宽。

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